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All high-spin (S=2) iron(II) hemes are NOT alike

机译:所有高转速(S = 2)铁(II)血红素都不相同

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摘要

A common structural motif in heme proteins is a five-coordinate species in which the iron is coordinated by a histidyl residue. The widely distributed heme proteins with this motif are essential for the well being of humans and other organisms. We detail the differences in molecular structures and physical properties of high-spin iron(II) porphyrin derivatives ligated by neutral imidazole, hydrogen bonded imidazole, and imidazolate or other anions. Two distinct (high spin) electronic states are observed that have differing d-orbital occupancies and discernibly different five-coordinate square-pyramidal coordination groups. The doubly occupied orbital in the imidazole species is a low symmetry orbital oblique to the heme plane whereas in the imidazolate species the doubly occupied orbital is a high symmetry orbital in the heme plane, i.e., the primary doubly-occupied d-orbital is different. Methods that can be used to classify a particular complex into one or the other state include X-ray structure determinations, high-field Mossbauer spectroscopy, vibrational spectroscopy, magnetic circular dichroism, and even-spin EPR spectroscopy. The possible functional significance of the ground state differences has not been established for heme proteins, but is likely found in the pathways for oxygen transport vs. oxygen utilization.
机译:血红素蛋白中常见的结构基序是五配位物种,其中铁由组氨酸残基配位。具有该基序的广泛分布的血红素蛋白对于人类和其他生物的健康至关重要。我们详细介绍了中性咪唑,氢键结合的咪唑和咪唑化物或其他阴离子连接的高旋转铁(II)卟啉衍生物的分子结构和物理性质的差异。观察到两个不同的(高自旋)电子态,它们具有不同的d轨道占有率和可辨别的不同的五坐标方金字塔形协调基团。咪唑物种中的双重占据轨道是相对于血红素平面倾斜的低对称轨道,而在咪唑类物种中,双重占据的轨道在血红素平面中是高度对称的轨道,即,主要的双重占据的d轨道是不同的。可用于将特定复合物分类为一种或另一种状态的方法包括X射线结构测定,高场Mossbauer光谱,振动光谱,磁圆二色​​性和偶数EPR光谱。尚未确定血红素蛋白基态差异的可能功能意义,但很可能是在氧气转运与氧气利用的途径中发现的。

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